A Comparative Analysis Of Pulse Width Modulation Techniques For Voltage Source Inverter Fed Induction Motor Drive

R. Rajendran*, N. Devarajan**
* Assistant Professor, Department of IT, Karpagam College of Engineering, Coimbatore.
** Professor, Department of EEE, Government College of Technology, Coimbatore.
Periodicity:October - December'2011
DOI : https://doi.org/10.26634/jee.5.2.1584

Abstract

Adjustable speed drive system requires variable voltage and frequency supply which is invariably obtained form a threephase voltage source inverter. A number of pulse width modulation schemes are used to obtain variable voltage and frequency supply form an inverter. The most widely used PWM schemes for a three phase VSI are carrier based sinusoidal PWM (SPWM) and space vector PWM (SVPWM). There is an increasing trend of using space vector PWM because of their easier digital realization and better dc bus utilization. The MATLAB/SIMULINK simulation results show the superiority of the SVPWM compared to SPWM for an adjustable induction motor drive.

Keywords

Adjustable Induction Motor Drive, SPWM, SVPWM, MATLAB/SIMULINK

How to Cite this Article?

R. Rajendran and N. Devarajan (2011). A Comparative Analysis Of Pulse Width Modulation Techniques for Voltage Source Inverter Fed Induction Motor Drive. i-manager’s Journal on Electrical Engineering, 5(2), 34-41. https://doi.org/10.26634/jee.5.2.1584

References

[1]. B.K .Bose, (2002) ”Modern Power Electronics and AC drives”,Prentice-Hall.
[2]. Vedam Subrahmanyam, (2005). ”Electric Drives- Concepts and Applications”, Tata McGraw-Hill.
[3]. Guy Seguir, Francis Labric, (2007). ”Coverters of Power Electronics”, Vol 4.
[4]. W. Leonhard, (1990). ”Control of Electrical Drives” Springer- Verlag, New York, Tokyo.
[5]. K. Ogata, (1990). ”Modern Control Engineering”, Prentice- Hall, New Jersey.
[6]. Mohan, Undeland, Robbins, (1989). ”Power Electronics”, Wiley, second edition.
[7]. N. Mohan, (2011)”Advanced Electric Drives”, Minneapolis,
[8]. B.D. Bedford, R.G. Hoft, R.G. et al., (1984). ”Principles of Inverter Circuits”, New York: John Wiley & Sons, Inc.
[9]. Derek.A. Paice, (1999). ”Power Electronics Converters Harmonics”, Wiley-IEEE Press.
[10]. Tsung-Po Chen, Yen-Shin Lai, Chang-Huan Liu, (1999). ”A new space vector modulation technique for inverter control”, Power Electronics Specialists Conference, th 1999.PESC 99.30 Annual IEEE, Vol.2, No. 27, pp.777-782, June-July.
[11]. Daewoo Chung, Joohn-Sheok Kim,Seung-Ki Sul, (1998). ”Unified voltage modulation technique for realtime three-phase power conversion”, IEEE Transactions on Industry Applications, Vol.34, No. 22, pp.374-380.
[12]. S. Fukuda, K. Suzuki, (1997). ”Using Harmonic distortion determining factor for harmonic evaluation of carrier-based PWM methods”, Industry Applications Conference, Thirty-Second IAS Annual Meeting, IAS'97, Conference Record of the 1997 IEEE, Vol. 2, 5-9,pp.1534- 1541, Oct.
[13]. A.M. Hava, R.J. Kerkman, T.A. Lipo, (1997). ”A high performance generalized discontinuous PWM algorithm”, Applied Power Electronics Conference and Exposition, APEC'97 conference Proceedings, Vol. 2,23- 27, ,pp.886-894.
[14]. A.M. Hava, R.J. Kerkman, T.A. Lipo, (1997). ”Simple analytical and graphical tools for carrier based PWM methods”, Power Electronics Specialists Conference, PESC'97 Record, 28th Annual IEEE, Vol. 222-27, pp.1462- 1471.
[15]. D.G. Holmes, (1996). ”The significance of zero space vector placemen for carrier-based PWM schemes”, IEEE Transactions on Industry Applications, Vol. 32, pp.1122- 1129.
[16]. J. Holtz, (1994). ”Pulse width modulation for electronic power conversion”, Proceedings of the IEEE, Vol.82, No. 8 , pp.1194-1214.
[17]. A.M. Trzynadlowski, S.Legowski, (1994). ”Minimumloss vector PWM strategy for three-phaseinverters”, IEEE Transactions on Power Electronics, Vol. 9, No. 1, pp.26- 34.
[18]. A.C. Oliveira, C.B. Jacobina, et, al. (2007) ”Improved ead-time compensation for Sinusoidal PWM inverters operating at high switching frequencies”, IEEE Transactions on Industrial Electronics, Vol.54, No 4, Aug.
[19]. P. Bowler. (1995). ”Pulse Width Modulation for Induction Motor Drive”, Proceedings of the first IEEE International Caracas Conference on Devices, Circuits and Systems, 12-14 Dec.
[20]. Peter Vas. (1992). ”Electrical machines and drives: A space-vector theory approach”, Oxford University Press.
[21]. Van der Broeck, H. Skudelny, et.al. (1986). ”Analysis and Realization of a pulse width modulator based on voltage space vectors”, Proceedings of the IEEE-IAS conference, pp.244.251.
[22]. Y. Tzou, H. Hsu. (1997). ”FPGA Realization of space vector pwm control IC for 3 phase PWM inverters”, IEEE Transactions on Power Electronics, Vol.12, No.06, November.
[23]. Berrezzek Farid, Omeriri Amar, ( 2009)”A study of new techniques of controlled PWM inverters”, European journal of scientific research, Vol. 32, No.1, pp.78-88.
[24]. S. Ogasawara, H.Akagi, and A.Nabae. (1989). ”A novel PWM scheme of voltage source inverter based on space vector theory”, European Power Electronics Conference Record, Germany, pp.1197-1202.
[25]. Satean Tunyasrirut,Sompong Srilad. (2008). ”Comparison power quality of the voltage source inverter type SVPWM and SPWM technique for induction motor drive”, Proceedings of the SICE Annual Conference, pp.241-246.
[26]. G. Almer, (1991). ”A PWM current-source inverter for high quality drive: European Power Electronics Journal, Vol.1,No.1, ,pp 21-32, July.
[27]. S.R. Bowes, S.Grewal, and D. Holliday. (2001). High frequency PWM technique for two and three level single phase inverter: IEEE Proceedings-ElectricPower Applications, Vol.147, No.2, Mar.
[28].www.mathworks.com
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